English

High-quality amorphous Silicon Carbide for hybrid photonic integration at low temperature

Optics 2023-06-08 v1 Applied Physics

Abstract

Integrated photonic platforms have proliferated in recent years, each demonstrating its own unique strengths and shortcomings. However, given the processing incompatibilities of different platforms, a formidable challenge in the field of integrated photonics still remains for combining the strength of different optical materials in one hybrid integrated platform. Silicon carbide is a material of great interest because of its high refractive index, strong second and third-order non-linearities and broad transparecy window in the visible and near infrared. However, integrating SiC has been difficult, and current approaches rely on transfer bonding techniques, that are time consuming, expensive and lacking precision in layer thickness. Here, we demonstrate high index Amorphous Silicon Carbide (a-SiC) films deposited at 150^{\circ}C and verify the high performance of the platform by fabricating standard photonic waveguides and ring resonators. The intrinsic quality factors of single-mode ring resonators were in the range of Qint=(4.75.7)×105Q_{int} = (4.7-5.7)\times10^5 corresponding to optical losses between 0.78-1.06 dB/cm. We then demonstrate the potential of this platform for future heterogeneous integration with ultralow loss thin SiN and LiNbO3_3 platforms.

Keywords

Cite

@article{arxiv.2306.04491,
  title  = {High-quality amorphous Silicon Carbide for hybrid photonic integration at low temperature},
  author = {Bruno Lopez-Rodriguez and Roald Van Der Kolk and Samarth Aggarwal and Naresh Sharma and Zizheng Li and Daniel Van Der Plaats and Thomas Scholte and Jin Chang and Silvania F. Pereira and Simon Groeblacher and Harish Bhaskaran and Iman Esmaeil Zadeh Zadeh},
  journal= {arXiv preprint arXiv:2306.04491},
  year   = {2023}
}